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SS-SVX09A-EN
85
System Start-Up
a. Could cause serious compressor damage due to refrigerant floodback.
b. Removes working surface from the evaporator normally used for heat transfer.
Systems operating with superheat in excess of 16 degrees:
c. Could cause excessive compressor cycling on internal winding thermostat which leads to
compressor motor failure.
d. Lowers the efficiency of the evaporator by reducing the heat transfer capability.
The outdoor ambient temperature must be between 65ºF and 105ºF and the relative humidity of the
air entering the evaporator must be above 40 percent. When the temperatures are outside of these
ranges, measuring the operating pressures can be meaningless.
Condenser Fans
Condenser fan cycling is accomplished through interlocking the fan contactors with liquid line
pressure switches (4S11 and 4S12). When the low ambient damper option is applied, ambient
thermostats (1S36 & 1S37) are used to provide additional fan cycling control on “No System
Control”, Constant Volume, and Variable Air Volume applications.
Figure 43
illustrates the
condenser fan locations with their respective fan and relay designator.
When a cooling command has been initiated (circuit #1, first step), condenser fans 2B1, 2B2, and
2B3 are held “Off” by the liquid line pressure switch (4S11) and normally open interlock contacts
1K5 & 1K6. Once the pressure switch has closed (275 psig), condenser fan relay 1K5 is energized
starting fan 2B1. The normally open interlock contacts 1K5 closes, energizing fan contactor 1K6,
starting fan 2B2. When the normally open interlock contacts 1K6 close, they seal 1K6 contactor in
the “On” position until the cooling demand has been satisfied. Condenser fan 2B3 on 25, 30, 50 &
60 Ton units is not allowed to start until compressor relay 1K13 has energized and the low ambient
thermostat (1S36, if applicable) has closed.
If a second step cooling command is initiated, (circuit #2), condenser fans 2B4, 2B5, and 2B6 are
held “Off” by the liquid line pressure switch (4S12) and normally open interlock contacts 1K8 & 1K9.
Once the pressure switch has closed (275 psig), condenser fan relay 1K8 is energized starting fan
2B4. The normally open interlock contacts 1K8 closes, energizing fan contactor 1K9, starting fan
2B5. When the normally open interlock contacts 1K9 close, they seal 1K9 contactor in the “On”
position until the cooling demand has been satisfied. Condenser fan 2B6 on 50 and 60 Ton units
is not allowed to start until compressor relay 1K14 has energized and the low ambient thermostat
(1S37, if applicable) has closed.
Figure 42. W7100G Staging Sequence
Содержание RAUC-C20
Страница 10: ...10 SS SVX09A EN Installation Figure 3 RAUC C20 Unit Dimensional Data Recommended Clearances...
Страница 11: ...SS SVX09A EN 11 Installation Figure 4 RAUC C25 Unit Dimensional Data Recommended Clearances...
Страница 12: ...12 SS SVX09A EN Installation Figure 5 RAUC C30 Unit Dimensional Data Recommended Clearances...
Страница 13: ...SS SVX09A EN 13 Installation Figure 6 RAUC C40 Unit Dimensional Data Recommended Clearances...
Страница 14: ...14 SS SVX09A EN Installation Figure 7 RAUC C50 Unit Dimensional Data Recommended Clearances...
Страница 15: ...SS SVX09A EN 15 Installation Figure 8 RAUC C60 Unit Dimensional Data Recommended Clearances...
Страница 55: ...SS SVX09A EN 55 Installation Field Connection Diagram Notes for all System Control Options...
Страница 67: ...SS SVX09A EN 67 Installation Figure 33 6RT1 Discharge Air Sensor Assembly...
Страница 96: ...96 SS SVX09A EN System Start Up Figure 47 20 Ton Pressure Curve...
Страница 97: ...SS SVX09A EN 97 System Start Up Figure 48 25 Ton Pressure Curve...
Страница 98: ...98 SS SVX09A EN System Start Up Figure 49 30Ton Pressure Curve...
Страница 99: ...SS SVX09A EN 99 System Start Up Figure 50 40 Ton Pressure Curve per Circuit...
Страница 100: ...100 SS SVX09A EN System Start Up Figure 51 50 Ton Pressure Curve per Circuit...
Страница 101: ...SS SVX09A EN 101 System Start Up Figure 52 60 Ton Pressure Curve per Circuit...